纳米组织多层膜的粘附性

Yolla Kazzi, Houssein Awada
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引用次数: 0

摘要

由有机(烷基二硫醇)和金属(金)层交替组成的纳米结构多层接枝到玻璃板上,以改变衬底薄表面层的机械和局部耗散特性。通过Johnson, Kendall, Roberts (JKR)和线弹性断裂力学两种理论,提出并验证了聚异戊二烯弹性体与这些层之间的粘附现象。附着力随接触时间的增加遵循幂律已被清楚地注意到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adhesion on Nanoorganized Multilayers
Nanostructured multilayers composed of alternate organic (alkyldithiol) and metallic (gold) layers are grafted onto glass plates and prepared in order to modify the mechanical and local dissipative properties of a thin surface layer of the substrate. The adhesion phenomenon between a polyisoprene elastomer and these layers is presented and verified by two theories, namely, Johnson, Kendall, Roberts (JKR) and linear elastic fracture mechanics. The increase in adhesion with contact time following a power law has been clearly noted.
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